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Energy and mass exchange processes and fugacity are also discussed at various scales, from cellular to organism to ecosystem.
Determination of the contaminant source strength from mass exchange processes at the petroleum ground-water interface in shallow aquifer systems.
These results will permit to define, according to the ideas of the systems' operation, appropriate parameters to characterise the heat and mass exchange processes that take place as well as to compare them, like cooling capacity, thermal or energetic effectiveness; and afterwards developing this comparative analysis.
To attain the stable functioning of biological life support systems (BLSS) and to maintain a high degree of closure of material cycles in than, it is essential to understand the character of mass exchange processes and stoichiometnc proportions of the initial and synthesized components of the system.
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The applicability of the model is illustrated by applying it for describing a process of heating particles by gas with interparticle heat transfer, and a mass exchange process between fluid particles.
We additionally examine the accuracy of the commonly used empirical memory functions against those directly calculated from pore-scale simulations, finding that none of these functions can accurately describe the mass exchange process.
It is hence difficult to verify that the calibrated memory functions correctly describe the mass exchange process or just to bridge the model and the measurements in that a shift from the experimental conditions could invalidate the model.
Moreover, the optimal chemical potentials of the cyclic working substance and the optimal mass-exchange times in the three mass-exchange processes are further discussed.
In this paper, we review the role of patterns to improve our understanding of water, mass and energy exchange processes in soil-vegetationatmosphere systems.
The model is formulated as a non-linear, multidimensional population balance equation describing deterministic chemical reactions and temperature variations inside the fluid elements and stochastic mass and heat exchange processes between the fluid elements by their impacts.
Synthesis of optimal mass exchange network (MEN) for continuous processes based on Pinch Analysis has been rather well established.
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